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April 23, 2026AIChE Journal0 citations

A cluster‐based extension of COSMO ‐ SAC for predicting VLE in inorganic salt solutions

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YCYongqiang ChengMSMinghao SongQLQinghua Liu

Key Points

  • To improve the COSMO-SAC model for accurately predicting vapor-liquid equilibrium (VLE) in inorganic salt solutions.
  • Developed a cluster-based extension of the COSMO-SAC model.
  • Identified ion-solvent cluster structures using molecular dynamics and quantum chemical methods.
  • Applied the model to predict VLE behavior for specific salt solutions.
  • The extended model successfully predicts VLE behavior for dilute KNO3, NaNO3, and CaCl2 solutions.
  • Predictions are made without empirical fitting parameters.
  • Some deviations are observed for strong electrolytes due to long-range electrostatic interactions.

Abstract

Abstract This study extends the parameter set of the COSMO‐SAC model to inorganic salt‐containing solution systems for describing their vapor–liquid equilibrium (VLE) behavior. An equivalent modeling strategy is proposed in which inorganic salts form stable pseudo‐neutral clusters composed of cations, anions, and coordinated water molecules that effectively participate in VLE. Representative ion–solvent cluster structures are identified using molecular dynamics simulations and quantum chemical calculations and are incorporated into the COSMO‐SAC framework as independent components. Without introducing empirical fitting parameters, the extended model reasonably predicts the VLE behavior of dilute aqueous KNO 3 , NaNO 3 , and CaCl 2 solutions under atmospheric pressure. While deviations remain for strong electrolytes due to long‐range electrostatic interactions and complex solvation effects, this work demonstrates the feasibility of cluster‐based molecular thermodynamic modeling for electrolyte‐containing systems.

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Cite This Study

Cheng et al. (2026) studied this question.

synapsesocial.com/papers/69e9bb6285696592c86ed24chttps://doi.org/10.1002/aic.70416
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